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生物基亚麻籽油皮克林乳液中的双粒子协同作用:优化用于更环保矿物防晒霜的氧化锌-二氧化硅网络。

Dual-Particle Synergy in Bio-Based Linseed Oil Pickering Emulsions: Optimising ZnO-Silica Networks for Greener Mineral Sunscreens.

作者信息

Barquero Marina, Trujillo-Cayado Luis A, Santos Jenifer

机构信息

Departamento de Ingeniería Química, Escuela Politécnica Superior, Universidad de Sevilla, c/Virgen de África, 6, 41007 Sevilla, Spain.

Departamento de Ciencias de la Salud y Biomédicas, Facultad de Ciencias de la Salud, Universidad Loyola Andalucía, Avda. de las Universidades s/n, Dos Hermanas, 41704 Sevilla, Spain.

出版信息

Materials (Basel). 2025 Jun 26;18(13):3030. doi: 10.3390/ma18133030.

Abstract

The development of mineral, biodegradable sunscreens that can offer both high photoprotection and long-term colloidal stability, while limiting synthetic additives, presents a significant challenge. A linseed oil nanoemulsion co-stabilised by ZnO nanoparticles and the eco-friendly surfactant Appyclean 6552 was formulated, and the effect of incorporating fumed silica/alumina (Aerosil COK 84) was evaluated. A central composite response surface design was used to ascertain the oil/ZnO ratio that maximised the in vitro sun protection factor at sub-300 nm droplet size. The incorporation of Aerosil at concentrations ranging from 0 to 2 wt.% resulted in a transformation of the dispersion from a nearly Newtonian state to a weak-gel behaviour. This alteration was accompanied by a reduction in the Turbiscan Stability Index. Microscopic analysis has revealed a hierarchical particle architecture, in which ZnO forms Pickering shells around each droplet, while Aerosil aggregates bridge neighboring interfaces, creating a percolated silica scaffold that immobilises droplets and amplifies multiple UV scattering. The findings demonstrate that coupling interfacial Pickering armour with a continuous silica network yields a greener, physically robust mineral sunscreen and offers a transferable strategy for stabilising plant-oil emulsions containing inorganic actives.

摘要

开发既能提供高效光防护又能保持长期胶体稳定性,同时限制合成添加剂的矿物可生物降解防晒霜是一项重大挑战。制备了一种由氧化锌纳米颗粒和环保型表面活性剂Appyclean 6552共同稳定的亚麻籽油纳米乳液,并评估了添加气相二氧化硅/氧化铝(Aerosil COK 84)的效果。采用中心复合响应面设计来确定在液滴尺寸小于300 nm时能使体外防晒系数最大化的油/氧化锌比例。加入浓度为0至2 wt.%的气相二氧化硅导致分散体从近牛顿状态转变为弱凝胶行为。这种变化伴随着Turbiscan稳定性指数的降低。显微镜分析揭示了一种分级颗粒结构,其中氧化锌在每个液滴周围形成皮克林壳层,而气相二氧化硅聚集体桥接相邻界面,形成一个渗透的二氧化硅支架,固定液滴并增强多次紫外线散射。研究结果表明,将界面皮克林防护与连续的二氧化硅网络相结合可产生更环保、物理性能更强的矿物防晒霜,并为稳定含有无机活性成分的植物油乳液提供了一种可转移的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8134/12251255/8fc22bc71985/materials-18-03030-g001.jpg

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